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首页> 外文期刊>Zeitschrift fur Naturforschung, B. A Journal of Chemical Sciences >Complexation of cobalt(II), nickel(II), and copper(II) ions with pyridine, 2-methylpyridine, 3-methylpyridine, and 4-methylpyridine in acetonitrile
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Complexation of cobalt(II), nickel(II), and copper(II) ions with pyridine, 2-methylpyridine, 3-methylpyridine, and 4-methylpyridine in acetonitrile

机译:乙腈中钴(II),镍(II)和铜(II)离子与吡啶,2-甲基吡啶,3-甲基吡啶和4-甲基吡啶的络合

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摘要

Thermodynamic data of the complexation of cobalt(II), nickel(II), and copper(II) ions with pyridine (py), 2-methylpyridine (2Me-py), 3-methylpyridine (3Me-py), and 4-methylpyridine (4Me-py) have been determined by calorimetry and spectrophotometry in acetonitrile (MeCN) containing 0.1 mol dm(-3) (C2H5)(4)NClO4 as a constant ionic medium at 25 degrees C. The calorimetric and spectrophotometric data for py, 3Me-py and 4Me-py revealed the formation of [ML](2+) [ML2](2+), [ML3](2+), and [ML4](2+) (M = Co2+, Ni2+, Cu2+; L = py, 3Me-py, 4Me-py). For 2Me-py, on the other hand, the formation of only one complex, [M(2Me-py)](2+) (M = Co2+,Ni2+), was detected. The stepwise thermodynamic quantities and the individual electronic spectra of the complexes suggest that all of these have a six-coordinate octahedral structure. The stability of the [M(2Me-py)](2+) (M = Co2+, Ni2+) complexes is much lower than that of the corresponding py, 3Me-py, and 4Me-py complexes. The difference in the stability of the 2Me-py complexes is mainly due to their unfavorable entropy changes because the differences of enthalpies for all the complexes are not so significant. The free energies for the formation of the mono complexes follow the order Mn(II) > Co(II) > Ni(II) > Cu(II) < Zn(II) for the py, 3Me-py, and 4Me-py systems. The Delta H(1)degrees values vary in the same order and the Delta S(1)degrees values are similar. Hence, the stability difference of the mono complexes originates from the enthalpic term. [References: 17]
机译:钴(II),镍(II)和铜(II)离子与吡啶(py),2-甲基吡啶(2Me-py),3-甲基吡啶(3Me-py)和4-甲基吡啶络合的热力学数据(4Me-py)已通过比色法和分光光度法在25°C下于0.1 mol dm(-3)(C2H5)(4)NClO4作为恒定离子介质的乙腈(MeCN)中进行了测定.py的比色法和分光光度数据3Me-py和4Me-py显示了[ML](2+)[ML2](2 +),[ML3](2+)和[ML4](2+)的形成(M = Co2 +,Ni2 +,Cu2 + ; L = py,3Me-py,4Me-py)。另一方面,对于2Me-py,仅检测到一种络合物[M(2Me-py)](2+)(M = Co2 +,Ni2 +)的形成。配合物的逐步热力学量和单个电子光谱表明,所有这些均具有六坐标八面体结构。 [M(2Me-py)](2+)(M = Co2 +,Ni2 +)配合物的稳定性远低于相应的py,3Me-py和4Me-py配合物。 2Me-py配合物稳定性的差异主要是由于它们不利的熵变化,因为所有配合物的焓差都不那么显着。对于py,3Me-py和4Me-py系统,形成单络合物的自由能遵循Mn(II)> Co(II)> Ni(II)> Cu(II)

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